Publication: Functional Effects of the Buckwheat Iminosugar d-Fagomine on Rats with Diet-Induced Prediabetes.
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Date
2018-08-01
Authors
Ramos-Romero, Sara
Hereu, Mercè
Atienza, Lidia
Casas, Josefina
Taltavull, Núria
Romeu, Marta
Amézqueta, Susana
Dasilva, Gabriel
Medina, Isabel
Torres, Josep L
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Abstract
The goals of this work are to test if d-fagomine, an iminosugar that reduces body weight gain, can delay the appearance of a fat-induced prediabetic state in a rat model and to explore possible mechanisms behind its functional action. Wistar Kyoto rats were fed a high-fat diet supplemented with d-fagomine (or not, for comparison) or a standard diet (controls) for 24 weeks. The variables measured were fasting blood glucose and insulin levels; glucose tolerance; diacylglycerols as intracellular mediators of insulin resistance in adipose tissue (AT), liver, and muscle; inflammation markers (plasma IL-6 and leptin, and liver and AT histology markers); eicosanoids from arachidonic acid as lipid mediators of inflammation; and the populations of Bacteroidetes, Firmicutes, Enterobacteriales, and Bifidobacteriales in feces. It was found that d-fagomine reduces fat-induced impaired glucose tolerance, inflammation markers, and mediators (hepatic microgranulomas and lobular inflammation, plasma IL-6, prostaglandin E2 , and leukotriene B4 ) while attenuating the changes in the populations of Enterobacteriales and Bifidobacteriales. d-Fagomine delays the development of a fat-induced prediabetic state in rats by reducing low-grade inflammation. We suggest that the anti-inflammatory effect of d-fagomine may be linked to a reduction in fat-induced overpopulation of minor gut bacteria.
Description
MeSH Terms
Adipose Tissue
Animals
Blood Glucose
Body Weight
Diet, High-Fat
Fagopyrum
Gastrointestinal Microbiome
Imino Pyranoses
Inflammation
Insulin
Lipids
Male
Prediabetic State
Rats
Rats, Inbred WKY
Animals
Blood Glucose
Body Weight
Diet, High-Fat
Fagopyrum
Gastrointestinal Microbiome
Imino Pyranoses
Inflammation
Insulin
Lipids
Male
Prediabetic State
Rats
Rats, Inbred WKY
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CIE Terms
Keywords
diabetes, iminocyclitol, iminosugars, inflammation, microbiota, obesity